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    • 1. 发明授权
    • Gas discharge panel
    • 排气面板
    • US4697123A
    • 1987-09-29
    • US319404
    • 1981-11-09
    • Tsutae ShinodaYoshinori MiyashitaYoshimi SugimotoHideo SeiShizuo Andoh
    • Tsutae ShinodaYoshinori MiyashitaYoshimi SugimotoHideo SeiShizuo Andoh
    • G09F9/313H01J11/14H01J11/42H01J11/46H01J11/48H01J17/49G09G3/10
    • H01J11/00
    • Disclosed here is a panel structure for a large size display which utilizes the gas discharge panel called the surface discharge type panel. Among a pair of substrates arranged face to face in order to define the gas discharge space, the one substrate which is used as the electrode supporting substrate is composed of the composite substrate body where plurality of small size substrates which can be produced comparatively easily with high production yield are combined in such a form that the side edge surfaces of said substrates are aligned face to face, while the other substrate which is used as the covering substrate is composed of a large size single substrate in such a size same as said composite substrate body. Such substrate structure realizes a large size gas discharge panel having a high production yield, without requiring the large scale production facility.
    • 这里公开了一种使用称为表面放电型面板的气体放电面板的大尺寸显示器的面板结构。 在为了限定气体放电空间而面对面配置的一对基板中,用作电极支撑基板的一个基板由能够相对容易地制造的多个小尺寸基板的复合基板体构成 生产率以这样的形式组合,使得所述基板的侧边缘表面面对面地对准,而用作覆盖基板的另一个基板由与所述复合基板的尺寸相同的大尺寸单个基板 身体。 这种基板结构实现了大型气体放电面板,其生产成本高,而不需要大规模生产设备。
    • 8. 发明授权
    • Gas discharge panel and method for driving the same
    • US4044349A
    • 1977-08-23
    • US507797
    • 1974-09-20
    • Shizuo AndohNorihiko Nakayama
    • Shizuo AndohNorihiko Nakayama
    • G09G3/28H01J11/10H01J11/12H01J11/28G06F3/14
    • H01J11/00G09G3/291G09G3/2986
    • A gas discharge panel includes several pairs of column (X) electrodes arranged on a first substrate and several pairs of row (Y) electrodes arranged on a second substrate, the column and row electrodes being orthogonally oriented and in spaced, opposed relation to define therebetween a gap filled with an ionizable gas. In a first driving configuration, a corresponding electrode of each pair of (X) electrodes is selectively driven by an (X) address driver and similarly a corresponding one of each of the (Y) electrode pairs is selectively driven by a (Y) address driver. The other electrode of each of the (X) and (Y) electrode pairs then is connected in common to respective (X) and (Y) sustain voltage driver terminals. In a further embodiment, each of the (X) and (Y) electrode pairs is arranged in corresponding groups of electrode pairs, each group including a common number of such pairs. First electrodes of each pair of each group are connected to a common output terminal of an address and sustain voltage driver; thus, plural address and sustain voltage driver outputs corresponding to the plural groups are employed for each of the (X) and (Y) electrode pairs. The second electrodes of corresponding pairs of the plural groups are connected to respectively corresponding, further common output terminals of address and sustain voltage drivers; thus, a plurality of further common terminals corresponding to the number of electrode pairs in each group are provided, as to each of the (X) and (Y) electrodes. The panel as thus configured affords decoding of addressing signals applied to the common terminals by means of plasma coupling within the panel whereby the discharge point or cell defined by a desired electrode of each of the column and the row electrode pairs can be addressed selectively. A further embodiment provides shifting of the display to successive positions in either the (X) or (Y) directions.